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Microstructure and Bio-mineralization Behavior of the Sol-Gel Derived Bioactive Materials

机译:溶胶 - 凝胶衍生的生物活性材料的组织和生物矿化行为

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The biomaterials in system CaO-P_2O_5-SiO_2 were synthesized via sol-gel method. The biomaterials can be applied to bone reparation and bone tissue engineering scaffolds The nano-pore structure, degradability, bioactivity and bio-mineralization characteristic of the biomaterials were investigated in details using XRD, SEM/EDX, FTIR, BET and DSC/TG techniques. It was indicated that the sol-gel derived biomaterials have a higher bioactivity than that of the melt derived bioactive glasses or glass-ceramics. It just takes 4-8 hours for HCA to form on the surface of the sol-gel samples in SBF solution at 37°C. The spherical HCA crystal clusters formed on the surface of the sol-gel derived samples immersed in SBF for 8 hours have a low crystallinity. Owing to their interconnected nano-sized pores, the sol-gel samples possess much higher surface areas and the hydrous porous SiO_2 gel layer containing a great amount of ≡Si-OH groups can be rapidly formed on the biomterials' surface through a quick ion exchange between H_3O~+ in the solution and Ca~(2+) in the surface of the materials. ≡Si-OH groups can play a very important role in inducing formation of HCA. They make the material surfaces electronegative, which resulted in a double electrode layer formed between the samples surface and SBF solution. The double electrode layer is in favor of formation of HCA on the surface of the materials.
机译:通过溶胶 - 凝胶法合成了系统CaO-P_2O_5-SiO_2中的生物材料。使用XRD,SEM / EDX,FTIR,BET和DSC / TG技术,将纳米孔结构,纳米孔结构,可降解性,生物活性和生物材料的纳米孔结构,可降解性,生物活性和生物矿化特征应用于生物材料的生物材料的能力。结果表明,溶胶 - 凝胶衍生的生物材料具有比熔体衍生的生物活性玻璃或玻璃陶瓷的生物活性更高。 HCA只需要4-8小时,以在37℃下在SBF溶液中的溶胶 - 凝胶样品表面上形成。形成在浸入SBF的溶胶 - 凝胶衍生样品的表面上形成的球形HCA晶体簇8小时具有低结晶度。由于它们相互连接的纳米尺寸孔,溶胶 - 凝胶样品具有更高的表面积,并且可以通过快速离子交换在生物钻头表面上快速形成含有大量≡Si-OH基团的含水多孔SiO_2凝胶层在材料表面的溶液和Ca〜(2+)中的H_3O〜+之间。 ≡SI-OH群体可以在诱导HCA形成方面发挥非常重要的作用。它们使材料表面电控,从而导致在样品表面和SBF溶液之间形成的双电极层。双电极层有利于在材料表面上形成HCA。

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